Sulphuric acid can be prepared by burning sulphur in oxygen (equation 1), then oxidize the sulphur di-oxide gas that formed in the presence of a catalyst to sulphur tri-oxide gas (equation 2) and then lastly absorb the sulphur tri-oxide gas in water (equation 3). Equation 1:     S (s) + O2 (g) → SO2 (g) Equation 2:     2SO2 (g) + O2 (g) → 2SO3 (g) Equation 3:     SO3 (g) + H2O (liq.) → H2SO4 (aq) Calculate the mass of sulphuric acid (in kg) that can be prepared from 10 kg of sulphur. Then calculate the volume of sulphuric acid (in dm3; density of sulphuric acid = 1.83 g/cm3). Lastly also calculate the mass of oxygen (in kg) that is nessessary for the formation of sulphuric acid from elemental sulphur.

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Sulphuric acid can be prepared by burning sulphur in oxygen (equation 1), then oxidize the sulphur di-oxide gas that formed in the presence of a catalyst to sulphur tri-oxide gas (equation 2) and then lastly absorb the sulphur tri-oxide gas in water (equation 3).

Equation 1:     S (s) + O2 (g) → SO2 (g)

Equation 2:     2SO2 (g) + O2 (g) → 2SO3 (g)

Equation 3:     SO3 (g) + H2O (liq.) → H2SO4 (aq)

Calculate the mass of sulphuric acid (in kg) that can be prepared from 10 kg of sulphur. Then calculate the volume of sulphuric acid (in dm3; density of sulphuric acid = 1.83 g/cm3). Lastly also calculate the mass of oxygen (in kg) that is nessessary for the formation of sulphuric acid from elemental sulphur.

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